Efficient heat dissipation shockproof dry-type transformer fixing frame

CN224803691UActive Publication Date: 2026-09-25FOSHAN ANPEI TRANSFORMER +1
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Patent Information

Application Number
CN202522181607.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-10-15
Publication Date
2026-09-25
Estimated Expiration
2035-10-15

AI Technical Summary

Technical Problem

[0003]而变压器在长时间的运作过程中,容易产生一定的热量,并且在一些较为大型的变压器在长时间的试用下,散发的热量会更大量,容易对其及周边造成一定的损坏,而此类型的变压器广泛应用于工业、农业、交通、城市社区等诸多领域,并且该类变压器为了避免出现过热的情况发生,变压器往往会添加散热结构用于散热、保护变压器以及调节电压等,但是上述结构容易导致变压器本体体积过大,并且在维修过程中,容易造成更加繁琐的拆卸修理

Benefits of technology

[0012]本实用新型用于固定变压器,让变压器可固定在设定的区域内,并且也避免变压器容易受到外界的碰撞,其中,本实用新型除了可为变压器提供固定及保护外,本实用新型还能对大小规格不一的变压器进行夹持固定,避免为了固定变压器而去适配多款框架,本实用新型通过气泵电机对气管内注入气体,而通过气体的膨胀推动,让两侧的支撑杆带动外壳体向外移动,从而腾出适配需安装的变压器的位置,而该变压器固定在本实用新型内后,通过气泵电机对气管内的气体往外抽出,并带动外壳体往变压器表面处贴合,直至固定片贴合至变压器外表面,此时,若干块散热片则朝向于变压器表面处,变压器表面处散发的热量则通过若干块散热片吸纳,而囤积在若干块散热片内的热量则通过导热管吸纳,而导热管内部流通有水,通过在导热管内部的水带走若干块散热片内的热量,从而让热量往一方向带出,最后通过散热风扇对导热管的热量向外带出。

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Abstract

The utility model relates to a transformer accessory field especially relates to a high -efficient heat dissipation shock -proof type dry -type transformer fixed frame, include: support rod, storage seat, top plate, bottom plate, shell, fin, the upper end and the lower end of support rod are provided with air pump motor respectively, and the storage seat is provided with between every two air pump motors, and air pump motor adopts air pipe to be embedded in the storage seat, and the air pipe is provided with the top rod, and the end of top rod is fixed in the storage seat, the shell is provided with at least two, and the shell is located between the support rod of front and rear, and the slot of two shell bodies is mutually oriented, and the shell slot is embedded with a plurality of heat dissipation fins that are arranged horizontally from top to bottom, the heat dissipation fin is oriented to the transformer surface, and the heat dissipated at the transformer surface is absorbed by a plurality of heat dissipation fins, and the heat accumulated in a plurality of heat dissipation fins is absorbed by the heat pipe, and the heat pipe has water circulation, and the water in the heat pipe carries away the heat in a plurality of heat dissipation fins.
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Description

Technical Field

[0001] This utility model relates to the field of transformer accessories, and more particularly to a high-efficiency heat dissipation and shockproof dry-type transformer fixing frame. Background Technology

[0002] A transformer is a multi-terminal electrical device that uses the principle of electromagnetic induction to raise or lower voltage and to transmit energy and information.

[0003] Transformers tend to generate heat during prolonged operation, and larger transformers can generate even more heat over extended periods, potentially causing damage to themselves and their surroundings. These types of transformers are widely used in various fields such as industry, agriculture, transportation, and urban communities. To prevent overheating, these transformers often incorporate heat dissipation structures for cooling, protection, and voltage regulation. However, these structures can lead to excessively large transformer bodies and make disassembly and repair more complicated during maintenance. Utility Model Content

[0004] To address the technical deficiencies in the background technology, this utility model proposes a high-efficiency heat dissipation and shockproof dry-type transformer fixing frame, which solves the above-mentioned technical problems and meets practical needs. The specific technical solution is as follows:

[0005] A high-efficiency heat dissipation and shockproof dry-type transformer fixing frame includes: support rods, a storage base, a top plate, a bottom plate, an outer shell, heat sinks, fixing plates, and support legs. At least four support rods are provided, with two at the front and two at the rear. Each support rod has an air pump motor at its upper and lower ends. A storage base is provided between every two air pump motors at the front and rear. Each air pump motor has an air pipe embedded in the storage base, and a top rod passes through each air pipe. One end of each top rod away from the corresponding air pipe is fixed in the storage base. A top plate connects the storage base located at the upper front and the storage base located at the lower rear. A bottom plate connects the storage base located at the lower front and the storage base located at the lower rear. The system comprises at least two outer shells, each positioned between a front and a rear support rod. The slots of the two outer shells face each other. Each outer shell has several horizontally arranged heat sinks embedded in its slot, arranged from top to bottom. Several longitudinally arranged fixing plates are embedded outside the heat sinks on each side. Several support legs are provided, arranged sequentially on the side of the base plate away from the top plate. Each heat sink on each side has a longitudinally arranged heat pipe, with both ends extending outward from the outer shell and into the base plate. The heat pipe extending into the base plate forms a meandering pattern throughout the base plate. A cooling fan is provided below the heat pipe extending into the base plate, embedded in the base plate, with its air outlet extending outward from the base plate.

[0006] Each of the support rods is hollow, and a linear electrical conduit is connected between the air pump motors located at the upper and lower ends of the support rod and extends along the inside of the support rod. The two air pump motors are respectively extended towards the base plate through linear electrical conduits and traverse into the base plate.

[0007] Each of the air tubes has a protruding strip on one surface, which is embedded in a guide groove in the receiving seat. The air tube slides out in one direction along the corresponding guide groove through the protruding strip. Each of the air tubes is fixed at one point to the corresponding air pump motor, and the air hole of the air pump motor is embedded in the air tube. Each of the push rods has a baffle at one end facing the air pump motor. The push rods discharge gas through the air pump motor and push the baffle outward.

[0008] The top plate and the bottom plate are arranged parallel to each other; the bottom plate faces both sides of the outer casing, and several placement slots are provided at the front and rear ends of the bottom plate; the heat-conducting pipes in the outer casing and the heat-conducting pipes in the bottom plate are connected by flexible hoses, and the flexible hoses are stored in the corresponding placement slots; a control unit is provided in the bottom plate, and the control unit extends outward by a linear electrical conduit and is electrically connected to the air pump motor and the cooling fan.

[0009] The bottom plate faces one side of the top plate and is fixed to the edges of the outer shell on both sides. The two ends of the two pads extend to the front and rear edges of the bottom plate respectively. The edges of each pad are inclined outward from top to bottom.

[0010] Each of the fixing plates is made of ceramic and is integrally formed; each of the fixing plates is fixed to the surface of several heat sinks, and the several heat sinks are in contact with the surface of the external transformer through the fixing plates.

[0011] The beneficial effects of this utility model are as follows:

[0012] This invention is used to fix transformers, allowing them to be secured within a designated area and preventing them from being easily damaged by external impacts. Besides providing fixation and protection for transformers, this invention can also clamp and fix transformers of different sizes, avoiding the need to adapt to multiple frames for transformer fixation. This invention uses an air pump motor to inject gas into the air pipe; the expansion of the gas pushes the support rods on both sides, causing the outer casing to move outward, thus making room for the transformer to be installed. The transformer is then fixed in place. After the utility model is installed, the gas in the air pipe is drawn out by the air pump motor, and the outer shell is brought into contact with the surface of the transformer until the fixing plate is attached to the outer surface of the transformer. At this time, several heat sinks face the surface of the transformer. The heat emitted from the surface of the transformer is absorbed by the heat sinks, and the heat accumulated in the heat sinks is absorbed by the heat pipe. Water flows inside the heat pipe. The water inside the heat pipe carries away the heat in the heat sinks, so that the heat is carried out in one direction. Finally, the heat is carried out by the cooling fan. Attached Figure Description

[0013] Figure 1 This is a three-dimensional structural diagram of a high-efficiency heat dissipation and shockproof dry-type transformer fixing frame.

[0014] Figure 2 This is a schematic diagram of the unfolded structure of a high-efficiency heat dissipation and shockproof dry-type transformer fixing frame.

[0015] Figure 3 This is a schematic diagram of the internal structure of the outer shell of a high-efficiency heat dissipation and shockproof dry-type transformer fixing frame.

[0016] Figure 4 This is a schematic diagram of the internal structure of the base plate of a high-efficiency heat dissipation and shockproof dry-type transformer fixing frame. Detailed Implementation

[0017] The embodiments of this utility model will be described below with reference to the accompanying drawings and related examples. The embodiments of this utility model are not limited to the following examples, and this utility model relates to relevant necessary components in this technical field, which should be regarded as well-known technology in this technical field and can be known and mastered by those skilled in this technical field.

[0018] like Figures 1 to 4 As shown, a high-efficiency heat dissipation and shockproof dry-type transformer fixing frame includes: support rods 1, storage bases 2, top plates 3, bottom plates 4, outer shells 5, heat sinks 6, fixing plates 7, and support legs 8. At least four support rods 1 are provided, with two support rods 1 located at the front and two at the rear. Each support rod 1 has an air pump motor 11 installed at its upper and lower ends. A storage base is provided between every two air pump motors 11 at the front and rear. 2. Each of the air pump motors 11 is embedded in the storage base 2 via an air pipe 21. A top rod 22 passes through each air pipe 21. One end of each top rod 22 away from the corresponding air pipe 21 is fixed in the storage base 2. A top plate 3 connects the storage base 2 located on the upper front side and the storage base 2 located on the lower rear side. A bottom plate 4 connects the storage base 2 located on the lower front side and the storage base 2 located on the lower rear side. At least two outer shells 5 are provided, and each outer shell 5 is located between a front and a rear support rod 1. The slots of the two outer shells 5 face each other. Several heat sinks 6 are embedded in the slot of each outer shell 5, arranged horizontally from top to bottom. Several longitudinally arranged fixing plates 7 are inlaid outside the several heat sinks 6 on each side. Several support brackets 8 are provided, and are respectively arranged on the side of the base plate 4 away from the top plate 3. A heat conduction pipe 51 is longitudinally arranged in the several heat sinks 6 on each side. The two ends of the heat conduction pipe 51 extend outward from the outer shell 5 and into the base plate 4. The heat conduction pipe 51 extending into the base plate 4 is meandering throughout the base plate 4. A cooling fan 42 is provided below the heat conduction pipe 51 extending into the base plate 4. The cooling fan 42 is embedded in the base plate 4, and the air outlet of the cooling fan 42 extends outward from the base plate 4.

[0019] This utility model is used to fix transformers, allowing them to be secured within a designated area and preventing them from being easily damaged by external impacts. Besides providing fixation and protection for transformers, this utility model can also clamp and fix transformers of different sizes, avoiding the need to adapt to multiple frames for transformer fixation. This utility model uses an air pump motor 11 to inject gas into the air pipe 21. The expansion of the gas pushes the support rods 1 on both sides, causing the outer casing 5 to move outward, thus making room for the transformer to be installed. After the transformer is fixed within this utility model... The air pump motor 11 draws the gas out of the air pipe 21 and drives the outer shell 5 to adhere to the surface of the transformer until the fixing plate 7 adheres to the outer surface of the transformer. At this time, several heat sinks 6 face the surface of the transformer. The heat emitted from the surface of the transformer is absorbed by the heat sinks 6, and the heat accumulated in the heat sinks 6 is absorbed by the heat pipe 51. Water flows inside the heat pipe 51. The water inside the heat pipe 51 carries away the heat in the heat sinks 6, so that the heat is carried out in one direction. Finally, the heat is carried out by the cooling fan.

[0020] With the above structure, it should be further explained that the support bracket 8 allows the present invention to be raised, avoiding direct contact with the ground, and also allows the cooling fan 42 to have a certain space for heat dissipation.

[0021] Each of the support rods 1 is hollow. A linear electrical conduit is connected between the air pump motors 11 located at the upper and lower ends of the support rod 1 and extends along the inside of the support rod 1. The two air pump motors 11 extend towards the base plate 4 through the linear electrical conduit and traverse into the base plate 4.

[0022] Each of the air tubes 21 has a protrusion 9 on one surface, which is embedded in the guide groove of the receiving seat 2. The air tube 21 slides out in one direction along the corresponding guide groove through the protrusion 9. Each of the air tubes 21 is fixed at one point to the corresponding air pump motor 11, and the air hole of the air pump motor 11 is embedded in the air tube 21. Each of the push rods 22 has a baffle at one end facing the air pump motor 11. The push rod 22 discharges gas through the air pump motor 11 and pushes the baffle outward.

[0023] The top plate 3 and the bottom plate 4 are arranged parallel to each other; the bottom plate 4 faces both sides of the outer shell 5, and the front and rear ends of the bottom plate 4 are respectively provided with a number of placement slots; the heat conduction pipe 51 in the outer shell 5 and the heat conduction pipe 51 in the bottom plate 4 are connected by a flexible hose, and the flexible hose is stored in the corresponding placement slot; a control unit 40 is provided in the bottom plate 4, and the control unit 40 extends outward by a linear electrical conduit and is electrically connected to the air pump motor 11 and the cooling fan 42.

[0024] With the above structure, it should be further explained that the control unit 40 used in this utility model is composed of several circuit boards. The control unit 40 is connected to the external electrical conduit and is linearly electrically connected to the external power supply and control equipment (such as computers), and brings the external power supply and control commands into this utility model.

[0025] The bottom plate 4 faces one side of the top plate 3 and is fixed with a pad 41 at the edges of the outer shell 5 on both sides. The two pads 41 extend to the front and rear edges of the bottom plate 4 at both ends. The edges of each pad 41 are inclined outward from top to bottom.

[0026] With the above structure, it should be further explained that the transformer is placed on top of the pad 41. The arrangement of the two pads 41 supports the transformer and avoids direct contact with the base plate 4, thus allowing more space for the transformer's heat to dissipate.

[0027] The inclined surfaces at both ends of the two pads 41 make it easier to push the transformer inward.

[0028] Each of the fixing plates 7 is made of ceramic and is integrally formed; each of the fixing plates 7 is fixed to the surface of several heat sinks 6, and the several heat sinks 6 are in contact with the surface of the external transformer through the fixing plates 7.

[0029] With the above structure, it should be further explained that the fixing plate 7 is used to fix several heat sinks 6 to prevent them from bending and deforming under external pressure. The fixing plate 7 is made of ceramic, which can withstand a certain high temperature and has good thermal conductivity. When the fixing plate 7 comes into contact with the transformer, it can directly transfer some of the heat from the transformer to the heat sinks 6.

[0030] The above description is only a preferred embodiment of the present utility model. It should be noted that for those skilled in the art, several improvements and modifications can be made without departing from the principle of the present utility model, and these improvements and modifications should also be considered within the protection scope of the present utility model.

Claims

1. A high-efficiency heat dissipation and shockproof dry-type transformer fixing frame, comprising: The system comprises a support rod, a storage base, a top plate, a bottom plate, a housing, heat sinks, fixing plates, and support legs. The support rods are characterized by having at least four rods, with two rods positioned at the front and two at the rear. Each support rod has an air pump motor at its upper and lower ends. A storage base is positioned between every two air pump motors (front and rear). Each air pump motor has an air pipe embedded within the storage base. A top rod passes through each air pipe, and the end of each top rod furthest from the corresponding air pipe is fixed to the storage base. Inside the storage base, a top plate is connected between the storage base located on the upper front side and the storage base located on the lower rear side, and a bottom plate is connected between the storage base located on the lower front side and the storage base located on the lower rear side. At least two outer shells are provided, and each outer shell is located between a front and a rear support rod. The slots of the two outer shells face each other. Several heat sinks are embedded in the slots of each outer shell, arranged horizontally from top to bottom. Several longitudinally arranged fixing plates are inlaid on the outside of the heat sinks on each side. The support legs are provided in several units, and are respectively arranged sequentially on the side of the base plate away from the top plate; Each of the several heat sinks on each side has a longitudinal heat pipe. The two ends of the heat pipe extend out of the outer casing and into the base plate. The heat pipe extending into the base plate is meandering throughout the base plate. A cooling fan is provided below the heat pipe extending into the base plate. The cooling fan is embedded in the base plate, and the air outlet of the cooling fan extends out of the base plate.

2. The high-efficiency heat dissipation and shockproof dry-type transformer fixing frame according to claim 1, characterized in that: Each of the support rods is hollow, and a linear electrical conduit is connected between the air pump motors located at the upper and lower ends of the support rod and extends along the inside of the support rod. The two air pump motors are respectively extended towards the base plate through linear electrical conduits and traverse into the base plate.

3. The high-efficiency heat dissipation and shockproof dry-type transformer fixing frame according to claim 1, characterized in that: Each of the air tubes has a protrusion on one surface, which is embedded in the guide groove of the receiving seat. The air tube moves and slides out in one direction along the corresponding guide groove through the protrusion. Each of the air tubes is fixed at a point to the corresponding air pump motor, and the air port of the air pump motor is embedded in the air tube; Each of the push rods has a baffle at one end facing the air pump motor. The push rods discharge gas through the air pump motor and push the baffle outward.

4. The high-efficiency heat dissipation and shockproof dry-type transformer fixing frame according to claim 1, characterized in that: The top plate and the bottom plate are arranged parallel to each other; The base plate faces both sides of the outer shell, and the front and rear ends of the base plate are respectively provided with a number of placement slots; The heat-conducting pipe located inside the outer casing is connected to the heat-conducting pipe located inside the bottom plate by a flexible hose, and the flexible hose is stored in a corresponding placement slot. The base plate contains a control unit, which extends outward using a linear electrical conduit and is electrically connected to the air pump motor and the cooling fan.

5. The high-efficiency heat dissipation and shockproof dry-type transformer fixing frame according to claim 1, characterized in that: A pad is fixed to one side of the bottom plate facing the top plate and to the edges of the outer shell on both sides. The two pads extend to the front and rear edges of the bottom plate respectively. The two ends of each of the pads are inclined outward from top to bottom.

6. The high-efficiency heat dissipation and shockproof dry-type transformer fixing frame according to claim 1, characterized in that: Each of the aforementioned fixing plates is made of ceramic and is integrally formed; Each of the fixing plates is fixed to the surface of several heat sinks, and the several heat sinks are in contact with the surface of the external transformer through the fixing plates.